Claims
- 1. An apparatus for brazing joints in metals and ceramics, said apparatus comprising:
(a) a radiant energy source; and (b) a reflecting waveguide to direct and redirect beams from said energy source onto a workpiece; wherein said reflecting waveguide is shaped and said workpiece is positioned to optimize the energy pattern on and within said workpiece.
- 2. The apparatus of claim 1 further comprising:
(c) a part holder to hold said workpiece in position to be contacted with said energy beams.
- 3. The apparatus of claim 1 wherein said reflecting waveguide is V-shaped.
- 4. The apparatus of claim 1 wherein said reflecting waveguide is conically shaped.
- 5. The apparatus of claim 1 wherein said reflecting waveguide is V-shaped with curved walls.
- 6. The apparatus of claim 1 wherein said reflecting waveguide is a cone with outwardly curved walls.
- 7. The apparatus of claim 1 wherein said reflecting waveguide is a cone with inwardly curved walls.
- 8. The apparatus of claim 1 wherein said reflecting waveguide is a complex surface.
- 9. The apparatus of claim 1 wherein a portion of the surface of said workpiece is said reflecting waveguide.
- 10. The apparatus of claim 1 wherein said reflecting waveguide is both at least one surface of said workpiece and a separate reflecting waveguide.
- 11. The apparatus of claim 1 wherein said reflecting waveguide is made from a material selected from the group of: copper, alumina, ceramic, aluminum, silver, gold, silver plated material, and gold plated material.
- 12. The apparatus of claim 11 wherein said reflecting waveguide is made from copper.
- 13. The apparatus of claim 1 wherein said energy is infrared energy.
- 14. The apparatus of claim 1 wherein said energy source is a laser.
- 15. The apparatus of claim 14 wherein said energy source is a gas laser.
- 16. The apparatus of claim 14 wherein said energy source is a solid state laser.
- 17. The apparatus of claim 14 wherein said energy source is a diode laser.
- 18. The apparatus of claim 1 wherein said apparatus is in a processing chamber.
- 19. The apparatus of claim 18 wherein said processing chamber has an inlet, an outlet, and valves for atmosphere control.
- 20. The apparatus of claim 18 wherein said processing chamber has a temperature control mechanism.
- 21. The apparatus of claim 18 wherein said processing chamber has quartz windows.
- 22. The apparatus of claim 1 wherein said apparatus is a small portable apparatus.
- 23. A method for designing a reflecting waveguide and selecting a workpiece position in relation to said reflecting waveguide, said method comprising:
(a) determining the shape of said workpiece to be thermally treated or brazed; (b) determining the shape of a braze joint and filler material; (b) determining the time and temperature profile needed for the process; (c) selecting an energy source which can provide the energy needed; (d) selecting an approximated configuration for a reflecting waveguide; (e) selecting an approximate placement of said workpiece in relation to said waveguide; (f) entering data for (a), (b), (c), (d) and (e) into a computer model with ray tracing software; (g) running said computer model to obtain a quantitative assessment of the energy flux distribution on said workpiece; (h) entering selected variables in the configuration of said workpiece, the position of said workpiece, or the energy supplied into said computer model; (i) running said computer model again to obtain another quantitative assessment of energy flux distribution on said workpiece; and (j) reiterating steps (f) through (i) until a set of variables which will give the optimized energy flux distribution is determined.
- 24. The method of claim 23 further comprising:
(k) setting up work using the computer generated configuration for said reflecting waveguide, position of said workpiece, and energy profile; and (l) performing said work.
- 25. The method of claim 24 wherein said work is performed by a method comprising:
(a) contacting said reflecting waveguide with energy from said energy source for a length of time necessary to perform said work; (b) discontinuing contact of said reflecting waveguide with energy from said energy source.
- 26. The method of claim 25 wherein said work is a brazing process.
- 27. The method of claim 26 wherein said method further comprises applying brazing material to a joint to be brazed.
- 28. The method of claim 25 wherein said work is a heat treating process.
- 29. The method of claim 23 wherein a genetic algorithm is used for steps (i) and (j).
- 30. The method of claim 25 wherein said method is carried out in a processing chamber.
- 31. The method of claim 25 wherein said work is performed in a pressure controlled atmosphere.
- 32. The method of claim 25 wherein said work is performed in a temperature controlled atmosphere.
- 33. The method of claim 25 wherein said work is carried out in the presence of an inert gas.
- 34. The method of claim 24 wherein said reflecting waveguide is an integral part of said workpiece.
- 35. The method of claim 24 wherein said reflecting waveguide is both an integral part of said workpiece and a separate reflecting waveguide.
- 36. The method of claim 23 wherein said reflecting waveguide is selected from the group of V-shaped, conically-shaped, V-shaped with curved walls, conically-shaped with curved walls, and complex-shaped reflecting waveguides.
- 37. The method of claim 23 wherein said reflecting waveguide is made from a material selected from the group of: copper, alumina, ceramic, aluminum, silver, gold, silver plated material, and gold plated material.
- 38. The method of claim 37 wherein said reflecting waveguide is made from copper.
- 39. The method of claim 23 wherein said workpiece of one selected from the group of workpieces made of metal, ceramic, and combinations of metal and ceramic.
- 40. The method of claim 23 wherein said energy is infrared energy.
- 41. The method of claim 23 wherein said energy source is a laser.
- 42. The method of claim 25 wherein said workpiece is in situ, attached to part of an operating system.
Government Interests
[0001] This invention was made with government support under Contract No. W-7405-ENG-36 awarded by the U.S. Department of Energy. The government has certain rights in the invention.